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A novel dual-fluorescence strategy for functionally validating microRNA targets in 3′ untranslated regions: regulation of the inward rectifier potassium channel K(ir)2.1 by miR-212

Gene targeting by microRNAs is important in health and disease. We developed a functional assay for identifying microRNA targets and applied it to the K(+) channel K(ir)2.1 [KCNJ2 (potassium inwardly-rectifying channel, subfamily J, member 2)] which is dysregulated in cardiac and vascular disorders....

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Detalles Bibliográficos
Autores principales: Goldoni, Dana, Yarham, Janet M., McGahon, Mary K., O’Connor, Anna, Guduric-Fuchs, Jasenka, Edgar, Kevin, McDonald, Denise M., Simpson, David A., Collins, Anthony
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3475433/
https://www.ncbi.nlm.nih.gov/pubmed/22880819
http://dx.doi.org/10.1042/BJ20120578
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author Goldoni, Dana
Yarham, Janet M.
McGahon, Mary K.
O’Connor, Anna
Guduric-Fuchs, Jasenka
Edgar, Kevin
McDonald, Denise M.
Simpson, David A.
Collins, Anthony
author_facet Goldoni, Dana
Yarham, Janet M.
McGahon, Mary K.
O’Connor, Anna
Guduric-Fuchs, Jasenka
Edgar, Kevin
McDonald, Denise M.
Simpson, David A.
Collins, Anthony
author_sort Goldoni, Dana
collection PubMed
description Gene targeting by microRNAs is important in health and disease. We developed a functional assay for identifying microRNA targets and applied it to the K(+) channel K(ir)2.1 [KCNJ2 (potassium inwardly-rectifying channel, subfamily J, member 2)] which is dysregulated in cardiac and vascular disorders. The 3′UTR (untranslated region) was inserted downstream of the mCherry red fluorescent protein coding sequence in a mammalian expression plasmid. MicroRNA sequences were inserted into the pSM30 expression vector which provides enhanced green fluorescent protein as an indicator of microRNA expression. HEK (human embryonic kidney)-293 cells were co-transfected with the mCherry-3′UTR plasmid and a pSM30-based plasmid with a microRNA insert. The principle of the assay is that functional targeting of the 3′UTR by the microRNA results in a decrease in the red/green fluorescence intensity ratio as determined by automated image analysis. The method was validated with miR-1, a known down-regulator of K(ir)2.1 expression, and was used to investigate the targeting of the K(ir)2.1 3′UTR by miR-212. The red/green ratio was lower in miR-212-expressing cells compared with the non-targeting controls, an effect that was attenuated by mutating the predicted target site. miR-212 also reduced inward rectifier current and K(ir)2.1 protein in HeLa cells. This novel assay has several advantages over traditional luciferase-based assays including larger sample size, amenability to time course studies and adaptability to high-throughput screening.
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spelling pubmed-34754332012-10-22 A novel dual-fluorescence strategy for functionally validating microRNA targets in 3′ untranslated regions: regulation of the inward rectifier potassium channel K(ir)2.1 by miR-212 Goldoni, Dana Yarham, Janet M. McGahon, Mary K. O’Connor, Anna Guduric-Fuchs, Jasenka Edgar, Kevin McDonald, Denise M. Simpson, David A. Collins, Anthony Biochem J Research Article Gene targeting by microRNAs is important in health and disease. We developed a functional assay for identifying microRNA targets and applied it to the K(+) channel K(ir)2.1 [KCNJ2 (potassium inwardly-rectifying channel, subfamily J, member 2)] which is dysregulated in cardiac and vascular disorders. The 3′UTR (untranslated region) was inserted downstream of the mCherry red fluorescent protein coding sequence in a mammalian expression plasmid. MicroRNA sequences were inserted into the pSM30 expression vector which provides enhanced green fluorescent protein as an indicator of microRNA expression. HEK (human embryonic kidney)-293 cells were co-transfected with the mCherry-3′UTR plasmid and a pSM30-based plasmid with a microRNA insert. The principle of the assay is that functional targeting of the 3′UTR by the microRNA results in a decrease in the red/green fluorescence intensity ratio as determined by automated image analysis. The method was validated with miR-1, a known down-regulator of K(ir)2.1 expression, and was used to investigate the targeting of the K(ir)2.1 3′UTR by miR-212. The red/green ratio was lower in miR-212-expressing cells compared with the non-targeting controls, an effect that was attenuated by mutating the predicted target site. miR-212 also reduced inward rectifier current and K(ir)2.1 protein in HeLa cells. This novel assay has several advantages over traditional luciferase-based assays including larger sample size, amenability to time course studies and adaptability to high-throughput screening. Portland Press Ltd. 2012-10-18 2012-11-15 /pmc/articles/PMC3475433/ /pubmed/22880819 http://dx.doi.org/10.1042/BJ20120578 Text en © 2012 The Author(s) The author(s) has paid for this article to be freely available under the terms of the Creative Commons Attribution Non-Commercial Licence (http://creativecommons.org/licenses/by-nc/2.5/) which permits unrestricted non-commercial use, distribution and reproduction in any medium, provided the original work is properly cited. http://creativecommons.org/licenses/by-nc/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Goldoni, Dana
Yarham, Janet M.
McGahon, Mary K.
O’Connor, Anna
Guduric-Fuchs, Jasenka
Edgar, Kevin
McDonald, Denise M.
Simpson, David A.
Collins, Anthony
A novel dual-fluorescence strategy for functionally validating microRNA targets in 3′ untranslated regions: regulation of the inward rectifier potassium channel K(ir)2.1 by miR-212
title A novel dual-fluorescence strategy for functionally validating microRNA targets in 3′ untranslated regions: regulation of the inward rectifier potassium channel K(ir)2.1 by miR-212
title_full A novel dual-fluorescence strategy for functionally validating microRNA targets in 3′ untranslated regions: regulation of the inward rectifier potassium channel K(ir)2.1 by miR-212
title_fullStr A novel dual-fluorescence strategy for functionally validating microRNA targets in 3′ untranslated regions: regulation of the inward rectifier potassium channel K(ir)2.1 by miR-212
title_full_unstemmed A novel dual-fluorescence strategy for functionally validating microRNA targets in 3′ untranslated regions: regulation of the inward rectifier potassium channel K(ir)2.1 by miR-212
title_short A novel dual-fluorescence strategy for functionally validating microRNA targets in 3′ untranslated regions: regulation of the inward rectifier potassium channel K(ir)2.1 by miR-212
title_sort novel dual-fluorescence strategy for functionally validating microrna targets in 3′ untranslated regions: regulation of the inward rectifier potassium channel k(ir)2.1 by mir-212
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3475433/
https://www.ncbi.nlm.nih.gov/pubmed/22880819
http://dx.doi.org/10.1042/BJ20120578
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